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DPYD c.85 T > C, DPYD c.496 A>G, and DPYD c.2194 G>A and severe toxicity to fluoropyrimidines in PREPARE and Alpe-DPD
Elena De Mattia1, Jerry Polesel2, Maaike van der Lee3
1Experimental and Clinical Pharmacology, Centro di Riferimento Oncologico di Aviano (CRO) IRCCS, via Franco Gallini n. 2, Aviano, PN, 33081, Italy.
Abstract:
Current DPYD genotyping panels used to prevent fluoropyrimidine (FL)-related toxicity explain only a limited proportion of severe adverse events. The clinical relevance, beyond current testing, of additional DPYD variants, including DPYD*6 (c.2194 G>A, rs1801160), DPYD c.496 A>G (rs2297595), and DPYD*9 A (c.85 T > C, rs1801265) remains debated. This study evaluated each polymorphism individually, irrespective of the allelic configuration at the other investigated loci, and as part of three-locus haplotypes in relation to severe FL-related toxicity. For single-variant effects, data from patients enrolled in two trials (PREPARE, Italian cohort; Alpe-DPD) were combined with 31 eligible published studies in a meta-analysis comprising 33 studies and 17,485 patients, with subgroup analyses by ethnicity. Haplotype analyses were performed in the 1296 trial participants. LC-MS was applied to evaluate plasma uracil and dihydrouracil levels. In the meta-analysis, DPYD c.2194 G>A (OR=1.70; 95%CI: 1.48-1.95) and c.496 A>G (OR=1.55; 95%CI: 1.19-2.02) were associated with FL toxicity. No overall association was observed for c.85 T > C; however, it improved c.496 A>G associated risk prediction in a haplotype analysis. Haplotype #3 (minor c.496 G with major c.85 T) was consistently associated with increased severe overall toxicity (PREPARE: OR=2.62, 95%CI: 1.06-6.50; Alpe-DPD: OR=2.09, 95%CI: 1.01-4.37) and gastrointestinal toxicity (PREPARE: OR=5.65, 95%CI: 2.11-15.15; Alpe-DPD: OR=2.71, 95%CI: 1.23-5.97). An exploratory Receiver Operating Characteristic (ROC) curve analysis demonstrated a significant incremental gain in risk discrimination achieved by adding DPYD c.85 T > C to a model that already included c.496 A>G. Haplotype #4 (minor alleles at both loci) was not associated with toxicity, suggesting a functional interaction between the variants. DPYD c.2194 G>A did not add to haplotype-based stratification. In PREPARE, pre-treatment plasma uracil and dihydrouracil confirmed reduced DPD function in haplotype #3 carriers. Overall, DPYD c.2194 G>A and c.496 A>G increased severe FL-toxicity risk when evaluated individually, whereas the integration of c.85 T > C refined risk prediction in a haplotype-based approach, supporting further refinement of pharmacogenetic risk stratification.
